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Nuclear mechanics in disease.

机译:疾病中的核力学。

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摘要

Over the past two decades, the biomechanical properties of cells have emerged as key players in a broad range of cellular functions, including migration, proliferation, and differentiation. Although much of the attention has focused on the cytoskeletal networks and the cell's microenvironment, relatively little is known about the contribution of the cell nucleus. Here, we present an overview of the structural elements that determine the physical properties of the nucleus and discuss how changes in the expression of nuclear components or mutations in nuclear proteins can not only affect nuclear mechanics but also modulate cytoskeletal organization and diverse cellular functions. These findings illustrate that the nucleus is tightly integrated into the surrounding cellular structure. Consequently, changes in nuclear structure and composition are highly relevant to normal development and physiology and can contribute to many human diseases, such as muscular dystrophy, dilated cardiomyopathy, (premature) aging, and cancer.
机译:在过去的二十年中,细胞的生物力学特性已成为许多细胞功能(包括迁移,增殖和分化)中的关键角色。尽管很多注意力都集中在细胞骨架网络和细胞的微环境上,但对细胞核的贡献知之甚少。在这里,我们将介绍确定核物理性质的结构元件的概述,并讨论如何改变核成分的表达或核蛋白中的突变不仅会影响核力学,而且还能调节细胞骨架组织和多种细胞功能。这些发现说明核被紧密地整合到周围的细胞结构中。因此,核结构和组成的变化与正常发育和生理高度相关,并可导致许多人类疾病,例如肌肉营养不良,扩张型心肌病,(过早)衰老和癌症。

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